Crystallization and X-ray crystallographic analysis of the extracytoplasmic domain of the sensor histidine kinase CssS from Bacillus subtilisopen accessCrystallization and X-ray crystallographic analysis of the extracytoplasmic domain of the sensor histidine kinase CssS from Bacillus subtilis
- Other Titles
- Crystallization and X-ray crystallographic analysis of the extracytoplasmic domain of the sensor histidine kinase CssS from Bacillus subtilis
- Authors
- Pawan Dahal; Deepak Pathak; Eunju Kwon
- Issue Date
- Dec-2023
- Publisher
- 한국구조생물학회
- Citation
- Biodesign, v.11, no.4, pp 70 - 73
- Pages
- 4
- Indexed
- KCI
- Journal Title
- Biodesign
- Volume
- 11
- Number
- 4
- Start Page
- 70
- End Page
- 73
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/69400
- DOI
- 10.34184/kssb.2023.11.4.70
- ISSN
- 2288-6982
2288-7105
- Abstract
- Bacteria regulate stress-response transcription using two-component systems to adapt to environmental changes.
In Bacillus subtilis, the Css two-component system is responsible for counteracting envelope stress caused by heat, protein misfolding, and peptidoglycan stress. This envelope stress is directly recognized by the extracytoplasmic domain of CssS (CssS-ECD). As preliminary studies to understand the stress-sensing mechanism of CssS, CssS-ECD was expressed, purified, and crystallized. Diffraction data of CssS-ECD were collected at a sub-atomic resolution of 0.92 Å. The crystal belongs to the primitive P1 space group with unit cell parameters of a = 27.2, b = 33.7, c = 33.8 (Å), α = 97.7, β = 109.5, and γ = 104.6 (°). The Matthews coefficient of this crystal is calculated to be 1.75 Å3/Da and the corresponding solvent content is 29.6%, assuming that one CssS-ECD is in the crystallographic asymmetric unit.
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Collections - 자연과학대학 > Division of Life Sciences > Journal Articles

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